Kakad Smita P, Gangurde Trupti D, Kshirsagar Sanjay J, Mundhe Vaishali G
Department of Pharmaceutics, MET Institute of Pharmacy, Nashik, Maharashtra, India.
Heliyon. 2022 Jul 9;8(7):e09925. doi: 10.1016/j.heliyon.2022.e09925. eCollection 2022 Jul.
Intranasal drug delivery is one of the uprising areas of the research in targeting drug to the brain. Nose to brain drug delivery follows the olfactory pathway and purportedly known to be more efficient to deliver neuro-therapeutics to the brain by circumventing the BBB and thereby increasing bioavailability of drugs in the brain. The advantage of this method is non-invasiveness, rapid onset of action and helps to achieve site specific delivery. In this research work nanosuspension were prepared using combination of antiretroviral agents for Neuro-AIDS treatment. Nanosuspensions were prepared by high-speed homogenization, wet milling and high-pressure homogenization techniques. Formulations were analysed by SEM, FTIR, and DSC. Morphology and stability analysis was done by analysing zeta potential, particle size, and PDI. diffusion study and histopathological analysis was performed using goat nasal mucosa. High pressure homogenization was found to be best technique for formulation of nanosuspension. Antiviral drugs could be delivered successfully by optimizing nasal dosage form.
鼻内给药是将药物靶向输送至大脑这一研究领域中正在兴起的领域之一。鼻至脑给药遵循嗅觉途径,据称通过绕过血脑屏障将神经治疗药物输送至大脑更为有效,从而提高药物在大脑中的生物利用度。该方法的优点是非侵入性、起效迅速且有助于实现靶向给药。在这项研究工作中,制备了用于神经艾滋病治疗的抗逆转录病毒药物组合纳米混悬液。通过高速均质化、湿磨和高压均质化技术制备纳米混悬液。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)对制剂进行分析。通过分析zeta电位、粒径和多分散指数(PDI)进行形态学和稳定性分析。使用山羊鼻黏膜进行扩散研究和组织病理学分析。发现高压均质化是制备纳米混悬液的最佳技术。通过优化鼻腔剂型可以成功递送抗病毒药物。